Krizek Beth A
Department of Biological Sciences, University of South Carolina, Columbia, SC 29208, USA
J Exp Bot. 2015 Aug;66(15):4537-49. doi: 10.1093/jxb/erv224. Epub 2015 May 8.
AINTEGUMENTA (ANT) is an important regulator of Arabidopsis flower development that has overlapping functions with the related AINTEGUMENTA-LIKE6 (AIL6) gene in floral organ initiation, identity specification, growth, and patterning. Two other AINTEGUMENTA-LIKE (AIL) genes, AIL5 and AIL7, are expressed in developing flowers in spatial domains that partly overlap with those of ANT. Here, it is shown that AIL5 and AIL7 also act in a partially redundant manner with ANT. The results demonstrate that AIL genes exhibit unequal genetic redundancy with roles for AIL5, AIL6, and AIL7 only revealed in the absence of ANT function. ant ail5 and ant ail7 double mutant flowers show alterations in floral organ positioning and growth, sepal fusion, and reductions in petal number. In ant ail5, petals are often replaced by filaments or dramatically reduced in size. ant ail7 double mutants produce increased numbers of carpels, which have defects in valve fusion and a loss of apical tissues. The distinct phenotypes of ant ail5, ant ail7 and the previously characterized ant ail6 indicate that AIL5, AIL6, and AIL7 make unique contributions to flower development. These distinct roles are also supported by genetic analyses of ant ail triple mutants. While ant ail5 ail6 triple mutants closely resemble ant ail6 double mutants, ant ail5 ail7 triple mutants exhibit more severe deviations from the wild type than either ant ail5 or ant ail7 double mutants. Furthermore, it is shown that AIL5, AIL6, and AIL7 act in a dose dependent manners in ant and other mutant backgrounds.
AINTEGUMENTA(ANT)是拟南芥花发育的重要调节因子,在花器官起始、身份确定、生长和模式形成方面与相关的AINTEGUMENTA-LIKE6(AIL6)基因具有重叠功能。另外两个AINTEGUMENTA-LIKE(AIL)基因,AIL5和AIL7,在发育中的花中表达,其空间结构域与ANT的部分重叠。本文表明,AIL5和AIL7也与ANT以部分冗余的方式发挥作用。结果表明,AIL基因表现出不等的遗传冗余,只有在ANT功能缺失时,AIL5、AIL6和AIL7的作用才会显现出来。ant ail5和ant ail7双突变体花在花器官定位和生长、萼片融合以及花瓣数量减少方面表现出改变。在ant ail5中,花瓣常被花丝取代或尺寸大幅减小。ant ail7双突变体产生的心皮数量增加,心皮在瓣膜融合方面存在缺陷且顶端组织缺失。ant ail5、ant ail7与之前表征的ant ail6的不同表型表明,AIL5、AIL6和AIL7对花发育做出了独特贡献。这些不同的作用也得到了ant ail三突变体遗传分析的支持。虽然ant ail5 ail6三突变体与ant ail6双突变体非常相似,但ant ail5 ail7三突变体比ant ail5或ant ail7双突变体表现出更严重的与野生型的偏差。此外,研究表明,AIL5、AIL6和AIL7在ant和其他突变背景中以剂量依赖的方式发挥作用。